Attosecond Control and Measurement of Chiral Photoionisation Dynamics
Meng Han, Jia-Bao Ji, Alexander Blech, R. Esteban Goetz, Corbin Allison, Loren Greenman, Christiane P. Koch, Hans Jakob W\"orner

TL;DR
This paper demonstrates the use of attosecond pulses for controlling and measuring chiral electron dynamics, enabling new insights into chiral photoionisation processes on their natural time scales.
Contribution
It introduces attosecond chiroptical spectroscopy and shows control over PECD and measurement of angle-resolved photoionisation delays in chiral molecules.
Findings
Nearly doubled PECD with co-rotating pulses
Measured up to 240 as angle-resolved delays
Observed asymmetry of ~60 as from chirality
Abstract
Many chirality-sensitive light-matter interactions are governed by chiral electron dynamics. Therefore, the development of advanced technologies harnessing chiral phenomena would critically benefit from measuring and controlling chiral electron dynamics on their natural attosecond time scales. Such endeavors have so far been hampered by the lack of characterized circularly polarized attosecond pulses, an obstacle that has recently been overcome (Han et al. Optica 10 (2023) 1044-1052, Han et al. Nature Physics 19 (2023) 230-236). In this article, we introduce chiroptical spectroscopy with attosecond pulses and demonstrate attosecond coherent control over photoelectron circular dichroism (PECD) (Goetz et al. Physical Review Letters 122 (2019) 013204, Goetz et al. arXiv:2104.07522), as well as the measurement of chiral asymmetries in the forward-backward and angle-resolved photoionisation…
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Taxonomy
TopicsLaser-Matter Interactions and Applications · Spectroscopy and Quantum Chemical Studies · Origins and Evolution of Life
